Defining cage subsidence in anterior, oblique, and lateral lumbar spine fusion approaches: a systematic review of the literature
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s10143-024-02551-5.pdf
Reference105 articles.
1. Adl Amini D, Moser M, Oezel L, Zhu J, Okano I, Shue J et al (2022) Early outcomes of three-dimensional-printed porous Titanium versus Polyetheretherketone Cage Implantation for stand-alone lateral lumbar Interbody Fusion in the treatment of symptomatic adjacent segment degeneration. World Neurosurg 162:e14–e20
2. Alan N, Vodovotz L, Muthiah N, Deng H, Guha D, Agarwal N et al (2022) Subsidence after lateral lumbar interbody fusion using a 3D-printed porous titanium interbody cage: single-institution case series. J Neurosurg Spine. 1–7
3. Alimi M, Lang G, Navarro-Ramirez R, Perrech M, Berlin C, Hofstetter CP et al (2018) The impact of cage dimensions, positioning, and side of Approach in Extreme lateral Interbody Fusion. Clin Spine Surg 31(1):E42–E9
4. Allain J, Delecrin J, Beaurain J, Poignard A, Vila T, Flouzat-Lachaniette CH (2014) Stand-alone ALIF with integrated intracorporeal anchoring plates in the treatment of degenerative lumbar disc disease: a prospective study on 65 cases. Eur Spine J 23(10):2136–2143
5. Behrbalk E, Uri O, Parks RM, Musson R, Soh RC, Boszczyk BM (2013) Fusion and subsidence rate of stand alone anterior lumbar interbody fusion using PEEK cage with recombinant human bone morphogenetic protein-2. Eur Spine J 22(12):2869–2875
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